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Global Gene Expression of Seed Coat Tissues Reveals a Potential Mechanism of Regulating Seed Size Formation in Castor Bean

机译:种皮组织的全球基因表达揭示了调节蓖麻子种子大小形成的潜在机制。

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摘要

The physiological and molecular basis of seed size formation is complex, and the development of seed coat (derived from integument cells) might be a critical factor that determines seed size formation for many endospermic seeds. Castor bean (Ricinus communis L.), a model system of studying seed biology, has large and persistent endosperm with a hard seed coat at maturity. Here, we investigated the potential molecular mechanisms underlying seed size formation in castor bean by comparing the difference between global gene expression within developing seed coat tissues between the large-seed ZB107 and small-seed ZB306. First, we observed the cell size of seed coat and concluded that the large seed coat area of ZB107 resulted from more cell numbers (rather than cell size). Furthermore, we found that the lignin proportion of seed coat was higher in ZB306. An investigation into global gene expression of developing seed coat tissues revealed that 815 genes were up-regulated and 813 were down-regulated in ZB306 relative to ZB107. Interestingly, we found that many genes involved in regulating cell division were up-regulated in ZB107, whereas many genes involved in regulating lignin biosynthesis (including several NAC members, as well as MYB46/83 and MYB58/63) and in mediating programmed cell death (such as CysEP1 and βVPE) were up-regulated in ZB306. Furthermore, the expression patterns of the genes mentioned above indicated that the lignification of seed coat tissues was enhanced and occurred earlier in the developing seeds of ZB306. Taken together, we tentatively proposed a potential scenario for explaining the molecular mechanisms of seed coat governing seed size formation in castor bean by increasing the cell number and delaying the onset of lignification in seed coat tissues in large-seed ZB107. This study not only presents new information for possible modulation of seed coat related genes to improve castor seed yield, but also provides new insights into understanding the molecular basis of seed size formation in endospermic seeds with hard seed coat.
机译:种子大小形成的生理和分子基础是复杂的,并且种皮(来自被膜细胞)的发育可能是决定许多胚乳种子种子大小形成的关键因素。蓖麻子(Ricinus communis L.)是研究种子生物学的模型系统,具有大而持久的胚乳,成熟时具有坚硬的种皮。在这里,我们通过比较大种子ZB107和小种子ZB306在发育中的种皮组织内的全局基因表达之间的差异,研究了蓖麻子中种子大小形成的潜在分子机制。首先,我们观察了种皮的细胞大小,并得出结论,ZB107的大种皮面积是由更多的细胞数量(而不是细胞大小)引起的。此外,我们发现ZB306中种皮的木质素比例更高。对发育中的种皮组织的整体基因表达的研究表明,相对于ZB107,ZB306中的815个基因被上调,而813个基因被下调。有趣的是,我们发现ZB107中有许多与调节细胞分裂有关的基因被上调,而许多基因与木质素的生物合成有关(包括几个NAC成员,以及MYB46 / 83和MYB58 / 63)并介导了程序性细胞死亡。 (例如CysEP1和βVPE)在ZB306中被上调。此外,上述基因的表达模式表明种皮组织的木质化被增强并且在ZB306的发育中的种子中发生得更早。两者合计,我们初步提出了一个潜在的场景,用于解释通过增加大种子ZB107的细胞数量和延迟种皮组织中木质化的发生来控制蓖麻子种皮控制种子大小形成的分子机制。这项研究不仅提供了可能的调节种皮相关基因以提高蓖麻种子产量的新信息,而且为了解具有硬种皮的胚乳种子中种子大小形成的分子基础提供了新的见解。

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