首页|西瓜黄化斑点叶片的生理特性与遗传倾向

西瓜黄化斑点叶片的生理特性与遗传倾向

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[目的]探究西瓜黄化斑点叶片的生理特性与遗传倾向,为该材料在实际应用及后续基因定位与克隆提供参考依据.[方法]以黄化斑点叶西瓜TNY1201和普通西瓜1182为材料,对其叶片表型、解剖结构以及光合生理特性进行对比分析,同时建立六世代群体进行遗传倾向研究.[结果]TNY1201从第一片真叶开始就具有黄化斑点性状,与普通西瓜叶片相比,具有面积大、密度小的气孔,叶片上下表皮细胞形状不规则,栅栏组织和海绵组织排列松散,叶片紧密度小,海绵组织所占体积较大;TNY1201净光合速率与叶绿素含量均显著低于1182,气孔导度、胞间CO2浓度显著高于1182;将TNY1201与1182进行正反交与回交,遗传倾向表现为F2中叶片有斑与无斑的分离比为3∶1,回交BC1P1叶片有斑与无斑分离比为1∶1.[结论]TNY1201叶片叶绿素含量、净光合速率均显著低于普通西瓜叶片.TNY1201叶片的黄化斑点由一对显性核基因控制.
Study on physiology and genetic tendency of watermelon spotted leaf
[Objective]Leaf color variation represents a common plant alteration.It is notably caused by genetic mutations that result in an abnormal chlorophyll metabolism leading to changes in leaf color.Hence,these mutations are popularly identified as chlorophyll mutations.The leaf color variance can serve as a phenotypic marker in plant breeding and as a germplasm resource for ornamental plants.In the realm of plant physiology,leaf color variants are recognized as ideal materials to investigate a spec-trum of physiological processes like photosynthesis and hormone metabolism.In the context of genet-ics,variant analysis can aid in recognizing the function of corresponding genes.TNY1201,a watermel-on germplasm,displays speckled attributes on each leaf.Thus,the exploration of its leaf structure,pho-tosynthesis,and genetic features can provide a benchmark for its practical usage and subsequent gene mapping and cloning.The present investigation undertook a comparative analysis on the leaf pheno-type,anatomical structure,and photosynthetic physiological characteristics between the spotted leaf wa-termelon TNY1201 and ordinary watermelon 1182.[Methods]The healthy and unblemished leaves were harvested from different individuals of spotted leaf watermelon TNY1201 and typical watermelon 1182 to ascertain the pertinent parameters of the leaves.The leaf length and width were measured.The praffin sections were crafted to observe and assess the anatomical structure of the leaves.The average area and density of single stomata were measured using a micrometer and nail polish imprinting tech-nique.The photosynthetic parameters including net photosynthetic rate,stomatal conductance,transpira-tion rate,and intercellular CO2 concentration were quantified via GFS-3000 photosynthetic apparatus at 09:00-10:00 on a clear day.The chlorophyll content of the leaves was estimated by alcohol extraction method.The content of dissolved sugar was measured by Anthrone colorimetry,and the content of solu-ble protein was assayed by the Coomassie brilliant blue method.The seeds of F1,F'1,F2,BC1P1 and BC1P2 progeny were obtained via conventional field management and artificial pollination.The P1(1182),P2(TNY1201),orthogonal F1,reciprocal F'1,BC1P1,BC1P2 progeny were sowed in module trays.As the seedlings matured to three leaves,the count of individual plants of spotless leaves and spot-ted leaves was surveyed and the data were analysed by Chi square test to determine the genetic tenden-cy.[Results]From the first real leaf,all leaves of the TNY1201 have yellow spots.The average single stomatal area of the TNY1201 leaves equated to 467.97 μm2,substantially larger than that of the 1182 leaves.Conversely,the stomatal density of the 1182 leaves was notably higher than those of the TNY1201.The anatomical parameters demonstrated notable disparities between the TNY1201 and 1182 leaves.Referencing the leaves of 1182,the morphology of the epidermal cells of the TNY1201 leaves was irregular,the palisade tissue and spongy tissue were loosely aligned within the mesophyll tis-sue,and the spongy tissue occupied a smaller proportion of volume.The leaf width,leaf area and leaf thickness of the TNY1201 are 18.38 cm,206.59 cm2 and 124.13 μm,respectively,markedly greater than those of the 1182.Contrarily,there was no significant difference in the leaf length between the two materials.The content of chlorophyll in the TNY1201 leaves was significantly lower than 1182.The con-tent of chlorophyll a,chlorophyll b and total chlorophyll in the TNY1201 leaves amounted to 82.51%,70.97%and 75.38%of the 1182.There was no significant disparity in carotenoid content between the TNY1201 and 1182 leaves.The net photosynthetic rate of the 1182 leaves was 7.90 μmol·m-2·s-1.The net photosynthetic rate of the TNY1201 leaves was 6.98 μmol·m-2·s-1.The net photosynthetic rate of the 1182 was significantly higher than that of the TNY1201,which accounted for a 1.13 times increase over the TNY1201.The stomatal conductance and intercellular CO2 concentration of the TNY1201 leaves ex-hibited significantly higher values than those of the 1182.The transpiration rates demonstrated no signif-icant variance between the TNY1201 and 1182 leaves.The content of soluble protein in the TNY1201 leaves was 22.70 μg·g-1,noticeably higher than that of the 1182 leaves.The total soluble sugar content of the TNY1201 leaves was 0.77 mg·g-1,which was markedly lower than that of the 1182 leaves.The F2 segregation population comprised 188 plants,including 146 individuals with spotted leaves and 42 indi-viduals without spotted leaves.In contrast,the BC1P1 population of the 142 plants included 74 individu-als with spotted leaves and 68 without spotted leaves.There were 145 strains present in the BC1P2 popu-lation,and all displayed spots on their leaves.Furthermore,the proportion of leaves exhibiting spots in the F2 plant population followed an approximate 3∶1 segregation ratio,while the proportion in the BC1P1 population followed al∶1 separation ratio.[Conclusion]The mesophyll tissue compactness in the TNY1201 leaves was lower than that of the 1182,and the proportion of palisade tissue was mini-mal.It could be postulated that there was fewer chloroplast in the TNY1201 leaves compared with 1182,leading to decreased chlorophyll content and photosynthetic rate,resulting in limited accumula-tion of photosynthetic products.The development of leaf spots was attributed to the reduction of chloro-phyll content in the leaves.It would be noteworthy that the genetic control of these spots in the TNY1201 leaves was governed by a pair of dominant nuclear genes.

WatermelonSpotted leaf mutantPhysiological characteristicsGenetic tendency

赵紫君、赵晨、杨可、池明、张卫华

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天津农学院园艺园林学院,天津 300392

西瓜 叶片斑点 生理特性 遗传倾向

天津市科技计划天津市科技计划

21ZYCGSN0067022ZYCGSN00200

2024

果树学报
中国农业科学院郑州果树研究所

果树学报

CSTPCD北大核心
影响因子:1.486
ISSN:1009-9980
年,卷(期):2024.41(3)
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